Long wavelength cosmological perturbations and preheating

This thesis is concerned with the evolution of long wavelength cosmological perturbations in the very early inflationary and post-inflationary stages of the universe. I first provide a thorough review of the relevent theoretical background. This material is presented in a completely original mann...

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Main Author: Zibin, James Peter
Format: Others
Language:English
Published: 2009
Online Access:http://hdl.handle.net/2429/16041
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-160412018-01-05T17:38:06Z Long wavelength cosmological perturbations and preheating Zibin, James Peter This thesis is concerned with the evolution of long wavelength cosmological perturbations in the very early inflationary and post-inflationary stages of the universe. I first provide a thorough review of the relevent theoretical background. This material is presented in a completely original manner, with essentially all of the required results exposed together. Emphasis is made throughout on elucidating the physical meaning of the results. I next perform a study of a particular inflationary model for which there can be explosive growth of long wavelength perturbations due to the process of parametric resonance, and I try to determine whether the backreaction of small scale perturbations is sufficient to save the standard inflationary predictions. I conclude that, for certain parameter values, it is not. Then I describe in considerable detail general aspects of the evolution of long wavelenth modes. I provide a careful link between the evolution of a set of homogeneous background scalar fields, treated as a dynamical system, and the evolution of physical, long wavelength modes. I show that in general we expect several physical modes which cannot be gauged away, and whose evolution depends on the behaviour of the background system. In parametric resonance the resonance can be seen as the instability of a periodic orbit in the background phase space. Finally I demonstrate that another type of background instability, dynamical chaos, can similarly lead to the rapid growth of long wavelength modes. Science, Faculty of Physics and Astronomy, Department of Graduate 2009-12-01T19:20:25Z 2009-12-01T19:20:25Z 2004 2004-05 Text Thesis/Dissertation http://hdl.handle.net/2429/16041 eng For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use. 10751710 bytes application/pdf
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language English
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description This thesis is concerned with the evolution of long wavelength cosmological perturbations in the very early inflationary and post-inflationary stages of the universe. I first provide a thorough review of the relevent theoretical background. This material is presented in a completely original manner, with essentially all of the required results exposed together. Emphasis is made throughout on elucidating the physical meaning of the results. I next perform a study of a particular inflationary model for which there can be explosive growth of long wavelength perturbations due to the process of parametric resonance, and I try to determine whether the backreaction of small scale perturbations is sufficient to save the standard inflationary predictions. I conclude that, for certain parameter values, it is not. Then I describe in considerable detail general aspects of the evolution of long wavelenth modes. I provide a careful link between the evolution of a set of homogeneous background scalar fields, treated as a dynamical system, and the evolution of physical, long wavelength modes. I show that in general we expect several physical modes which cannot be gauged away, and whose evolution depends on the behaviour of the background system. In parametric resonance the resonance can be seen as the instability of a periodic orbit in the background phase space. Finally I demonstrate that another type of background instability, dynamical chaos, can similarly lead to the rapid growth of long wavelength modes. === Science, Faculty of === Physics and Astronomy, Department of === Graduate
author Zibin, James Peter
spellingShingle Zibin, James Peter
Long wavelength cosmological perturbations and preheating
author_facet Zibin, James Peter
author_sort Zibin, James Peter
title Long wavelength cosmological perturbations and preheating
title_short Long wavelength cosmological perturbations and preheating
title_full Long wavelength cosmological perturbations and preheating
title_fullStr Long wavelength cosmological perturbations and preheating
title_full_unstemmed Long wavelength cosmological perturbations and preheating
title_sort long wavelength cosmological perturbations and preheating
publishDate 2009
url http://hdl.handle.net/2429/16041
work_keys_str_mv AT zibinjamespeter longwavelengthcosmologicalperturbationsandpreheating
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